• 제목/요약/키워드: water/oil emulsified fuel

검색결과 36건 처리시간 0.035초

유화중유의 점도-온도특성에 관한 연구 (A study on the viscosity-temperature characteristics of the emulsified heavy fuel oils)

  • 전대희;김기준;이상태
    • Journal of Advanced Marine Engineering and Technology
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    • 제7권2호
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    • pp.15-21
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    • 1983
  • Preparing for treatment and management of the emulsified fuel oil which will be generalized henceforth, this paper is an attempt to examine the viscosity-temperature characteristics of emulsified heavy fuel oil which is mixed with water and emulsifier in various mixture ratio by mechanical mixer. The experimental results are summarized as follows: 1. The viscosity-temperature characteristics of the emulsified C & B grade heavy fuel oil mixed with water of same or less weight, is changed according to log.log(v+0.6)=b-3.8log T. 2. The emulsifier has to be added to the emulsified A grade heavy fuel oil mixed with water of same or less weight, because it is instable. Especially if the emulsifier is sodium stearate, it is added more than 0.3% of the weight of oil and water. 3. In the emulsified A grade heavy fuel oil mixed with water and emulsifier, the higher the ratio of water addition becomes, the higher the viscosity is and the more the viscosity-temperature slope decreases. But the higher the ratio of emulsifier addition is, the more the viscosity-temperature slope increases. In this case, the linearity of viscosity-temperature characteristic curve is poorer than that of B and C grade heavy fuel oil. 4. In the emulsified A grade heavy fuel oil mixed with emulsifier of 0.3% or less, the emulsion type is O/W type when water addition ratio is 40%, but it is W/O type when it is 10%, 20%, 30% and 50%.

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디젤자동차의 저공해형 연료공급장치 개발 I (유화연료의 특성 및 분무거동) (Development of the low Emission type Fuel Feeding System for Diesel Automobile I (Characteristics and Spray of Emulsified Fuel))

  • 조성철;윤면근;류정인
    • 한국분무공학회지
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    • 제2권3호
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    • pp.8-16
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    • 1997
  • Ta investigate characteristics and spray of emulsified fuet we are mixed water with diesel oil using ultrasonic energy fuel feeding system. Separation ratio of emulsified fuel was shown good condition that of water content is small and longer ultrasonic energy adding time. Viscosity of emulsified fuel increased 79% with addition to water content and surface tension increased 1.6% in comparision to pure diesel oil. The SMD of emulsified fuel adding ultrasonic energy decreased with 3% in comparision to pure diesel oil. With increasing 5, 10% water content the SMD decreased 15.6, 20.1% in comparision to pure diesel oil. The mind-explosion was investigated with 4step.

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중질유-물 유화연료의 연소특성 평가 (An Evaluation on the Combustion Characteristics of Heavy Oil-Water Emulsions)

  • 이용일
    • 대한기계학회논문집B
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    • 제26권12호
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    • pp.1722-1728
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    • 2002
  • Most researches regarding emulsified fuel were in the areas of emulsifier, emulsified fuel manufacturing and emulsified fuel droplet combustion, but there were little papers published regarding emulsified fuel combustion and boiler efficiency in an industrial boiler. The main purpose of this study is to clarify whether improvements in the boiler efficiency and the reduction of pollutants such as CO, NOx, SOx and smoke exist or not when emulsified fuels are combusted in the commercial boiler. Main experimental parameters were water content in heavy oil , excess $O_2$, and boiler load. The fuels used in this experiment were 0.5 B-C, and 5 kinds of 0.5 B-C/water emulsified fuels. The combustion characteristics of heavy oil and its emulsions with water were investigated in an industrial boiler. The combustion stability was monitored and exhaust gases such as CO, NOx, SOx and smoke were measured with excess $O_2$ and combustion load. In case of emulsified fuel combustion, flame stability was poor and boiler efficiency was lowered by 1.6~5.7%, but emission levels of CO and smoke were improved.

가정용 보일러의 유화연료 공급장치 개발 및 분무 특성에 관한 연구 (A Study on the Development of Emulsified Fuel Supplier and Spray Characteristics of Domestic Petroleum Boiler)

  • 윤면근;김용국;류정인
    • 한국분무공학회지
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    • 제3권4호
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    • pp.8-15
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    • 1998
  • The spray characteristics of emulsified fuel of W/O type has been experimentally investigated. The mixture of light oil and water by using ultrasonic energy adding system is used as the emulsified fuel. The SMD of sprayed droplet of emulsified fuel is measured by using the particle size analyzer. Major parameters of the present experimental study are the volume fraction of water in emulsified fuel, $0\sim30%$ by 5%, injection pressure, $10kg_f/cm^2\sim18kg_f/cm^2$ by $2kg_f/cm^2$, and the measurement distance, $10\sim100mm$, between injection nozzle tip and analyzer beam. Compared with light oil, the SMD of emulsified fuel is larger gradually by increasing the volume fraction of water in emulsified fuel, heightening injection pressure and increasing the spray distance. Also, In considering the fact that the pattern of drop size distribution of emulsified fuel is alike that of light oil, the real time spray in coincidence with making emulsified fuel by adding ultrasonic energy can stabilize spray pattern without modificating the injection system used by now.

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유화연료의 특성에 관한 연구 (A Study on Characteristics of Emulsified Fuel)

  • 정진수;김종진;이금배
    • 한국연소학회:학술대회논문집
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    • 한국연소학회 1999년도 제19회 KOSCO SYMPOSIUM 논문집
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    • pp.105-110
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    • 1999
  • The elementary experiment was performed to develop the emulsified fuel production system using pressure injection nozzle in this study. The stabilities and characteristics of emulsified fuel which is produced through direct spray of water via pressure injection nozzle into oil are examined. To understand performance of emulsion production, stabilities of emulsified fuel which is made by adding water to the mixed fuel of Bunker-C and 10 $^{\sim}$ 50 vol% of heating oil were investigated. According to volume ratios of surfactant in heating oil the stability and SMDs were measured

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에멀젼연료의 분무거동특성에 관한 기초연구 (Basic Study of Spray-Behavior Characteristics of Emulsified Fuel)

  • 염정국;윤정환
    • 대한기계학회논문집B
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    • 제38권9호
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    • pp.763-771
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    • 2014
  • 본 연구는 에멀젼연료($diesel/H_2O_2$)의 분무거동특성에 관한 기초 연구로서 에멀젼연료를 제조하여 분무 거동특성에 영향을 주는 연료의 물성치(점도, 표면장력, 밀도)와 연료액적 증발특성을 조사하였다. 또한 에멀젼연료와 디젤연료의 거시적 분무거동특성인 분무선단도달거리, 분무각을 비교 분석하였다. 에멀젼연료의 교반 조건은 디젤 연료와 계면활성제 span 80, tween 80을 각각 9:1로 혼합한 유화제를 제작하여 사용 하였으며 과산화수소의 혼합비율은[EF(Emulsified Fuel)2, EF12, EF22, EF32, EF42, EF52, EF62, EF72, EF82, EF92]로 설정하였고, 분사압력은 400bar, 600bar, 800bar 및 1000bar로 설정하였다. 본 연구의 결과로서 연료의 점도는 과산화수소의 혼합비율이 증가할수록(EF52까지) 점도가 증가하나, 그 이후부터는 점도가 낮아져 기존의 디젤연료와 같은 점도를 가지게 된다. 이는 디젤의 혼합비율이 큰 EF52까지는 교반 시 수중유형(Water in Oil)이 생성되나 과산화수소의 혼합비율이 큰(EF52 이상) 에멀젼연료에서는 유중수형(Oil in Water)이 생성되기 때문이다. 또한 혼합비 변화에 따른 분무거동의 특성(분무선단도달거리, 분무각)의 변화는 크지 않았다.

Water/Oil 에멀젼 연료가 배출가스에 미치는 영향 (It's effects for engine emission of water/oil emulsified fuel)

  • 김문찬;이창숙
    • 분석과학
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    • 제21권3호
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    • pp.159-166
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    • 2008
  • 본 연구에서는 water/oil 유화연료를 제조하여 제조된 연료의 점도, 밀도, 최적의 조사시간, 유화 안정성 등의 유화연료 특성 및 배기배출물 특성인 NOx, THC, CO의 농도와 smoke density를 측정하였다. 유화연료는 경유, 물, 유화제를 첨가한 후 homogenizer와 초음파 발생장치를 일정시간 조사하여 제조하였고, 배출가스 시험은 2476 cc diesel engine을 사용하여 engine dinamo meter로 실험하였다. 유화연료에서 함수율이 증가할수록 밀도가 증가하였으며, 점도는 함수율 60%까지는 W/O type이 형성되어 증가하다가 70%에서는 O/W type이 형성되어 감소하였다. 배출가스 시험결과 함수율이 증가할수록 NOx 농도와 smoke density는 감소하고, THC와 CO 농도는 증가하였다. 출력감소 시험 결과 함수율이 증가할수록 배출온도와 출력이 감소하였다. 위의 결과로부터 압축착화 디젤기관에 유화연료를 사용하는 것은 NOx와 smoke를 제거하는 효과적인 방법이라고 사료되어진다.

디젤 기관의 연소와 배출물에 관한 연구 -경유-물물의 유화연료 사용시- (A Study on Combustion And Exhaust Emissions of Diesel Engine -For Gas Oil-Water Emulsified Fuel-)

  • 조진호;김형섭;박정률
    • 대한기계학회논문집
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    • 제16권1호
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    • pp.180-188
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    • 1992
  • 본 연구에서는 와류실식 디젤 기관에 경유-물의 유화연료 사용시 시관의 회전 속도(1500rpm)가 일정인 경우 물의 첨가량(체적비, 0~20%)과 기관의 부하(BMEP,2.1~ 7.5kg/$\textrm{cm}^2$)변화에 따른 연소실내 압력, 압력상승률 및 열발생률, 착화지연 기간, 연료 소비율 등의 연소특성과 CO, HC, NOx 및 매연의 배출능도 등 유해 배출 가스에 미치는 영향에 관하여 실험적으로 구한 것이다.

유화연료 단일액적의 증발 및 연소거동에 관한 실험적 연구 (An Experimental Study on Vaporization and Combustion Behavior for Single Droplets of Water-in-Oil Emulsified Fuels)

  • 김병석;김동일;오상헌
    • 대한기계학회:학술대회논문집
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    • 대한기계학회 2000년도 춘계학술대회논문집B
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    • pp.931-936
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    • 2000
  • An experimental study has been carried out of the combustion behavior of single fuel droplets of water-in-light oil emulsions in an electric furnace to elucidate the dominant factor for the occurrence of micro-explosions. The tests were carried out by changing the following four parameters; the size of water droplets in the emulsified fuels having the same water content, the ratio of water to light oil, ambient temperature in electric furnace, and the kind of fuel having different viscosity(Kerosene, Olive Oil). The result shows that the each parameter plays the different role in the effect on behavior of vaporization, explosion, ignition and combustion for single droplets of water-in-oil Emulsified fuels.

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압력선회노즐에서 물-기름 유화연료의 분무특성 (Spray Charateristics of Water/Oil Emulsified Fuel in Pressure-Swirl Nozzle)

  • 임정현;노수영
    • 한국분무공학회지
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    • 제5권1호
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    • pp.5-12
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    • 2000
  • The beneficial aspects of applying emulsion fuels to combustion systems may be due to the changes of fuel properties which lead to the enhanced atomization characteristics. The spray characteristics of water/oil emulsified fuel injected from the pressure-swirl(simplex) atomizer using for oil burner were investigated. Four different water contents from 10 to 40 % by volume at 10% increment were prepared by mixing with the different contents of surfactants. Total amount of surfactant used was varied from 1 to 3 % by volume. This study demonstrates the influence of water and surfactant contents of emulsified fuel, injection pressure on the spray characteristics, i.e. Sauter mean diameter(SMD) and spray angle. The drop size distribution of the emulsified fuel spray was measured with a Malvem particle sizer. In order to measure the spray angle, the digital image processing was employed by capturing multiple images of the spray with 3-CCD digital video camera. It was evident that the addition of water and surfactant changes fuel properties which are the key parameters influencing the atomization of the spray. The increase in surfactant content results in the decrease of SMD and the increase in spray angle. The droplets decease with increase in injection pressure, but the influence of injection pressure in this experimental condition was less important than expected. The more viscous fuel with the increase of water content exhibits the larger droplets in the centerline of the spray, and the less viscous fuel in the outer edges of the spray. The increase in axial position from the nozzle causes the spray angle to decrease. The spray angle decreases with increase in water content. This is due to increase in viscosity with increase in water content.

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